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利用CRISPR/Cas9系统简单生成酪氨酸酶基因发生G291T突变的白化C57BL/6J小鼠。

Simple generation of albino C57BL/6J mice with G291T mutation in the tyrosinase gene by the CRISPR/Cas9 system.

作者信息

Mizuno Seiya, Dinh Tra Thi Huong, Kato Kanako, Mizuno-Iijima Saori, Tanimoto Yoko, Daitoku Yoko, Hoshino Yoshikazu, Ikawa Masahito, Takahashi Satoru, Sugiyama Fumihiro, Yagami Ken-ichi

机构信息

Laboratory Animal Resource Center, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, 305-8575, Japan.

出版信息

Mamm Genome. 2014 Aug;25(7-8):327-34. doi: 10.1007/s00335-014-9524-0. Epub 2014 May 31.

Abstract

Single nucleotide mutations (SNMs) are associated with a variety of human diseases. The CRISPR/Cas9 genome-editing system is expected to be useful as a genetic modification method for production of SNM-induced mice. To investigate whether SNM-induced mice can be generated by zygote microinjection of CRISPR/Cas9 vector and single-stranded DNA (ssDNA) donor, we attempted to produce albino C57BL/6J mice carrying the Tyr gene SNM (G291T) from pigmented C57BL/6J zygotes. We first designed and constructed a CRISPR/Cas9 expression vector for the Tyr gene (px330-Tyr-M). DNA cleavage activity of px330-Tyr-M at the target site of the Tyr gene was confirmed by the EGxxFP system. We also designed an ssDNA donor for homology-directed repair (HDR)-mediated gene modification. The px330-Tyr-M vector and ssDNA donor were co-microinjected into the pronuclei of 224 one-cell-stage embryos derived from C57BL/6J mice. We obtained 60 neonates, 28 of which showed the ocular albinism and absence of coat pigmentation. Genomic sequencing analysis of the albino mice revealed that the target of SNM, G291T in the Tyr gene, occurred in 11 mice and one founder was homozygously mutated. The remaining albino founders without Tyr G291T mutation also possessed biallelic deletion and insertion mutants adjacent to the target site in the Tyr locus. Simple production of albino C57BL/6J mice was provided by C57BL/6J zygote microinjection with px330-Tyr-M DNA vector and mutant ssDNA (G291T in Tyr) donor. A combination of CRISPR/Cas9 vector and optional mutant ssDNA could be expected to efficiently produce novel SNM-induced mouse models for investigating human diseases.

摘要

单核苷酸突变(SNMs)与多种人类疾病相关。CRISPR/Cas9基因组编辑系统有望作为一种基因修饰方法用于生产单核苷酸突变诱导的小鼠。为了研究通过向受精卵显微注射CRISPR/Cas9载体和单链DNA(ssDNA)供体是否能够产生单核苷酸突变诱导的小鼠,我们尝试从有色的C57BL/6J受精卵中培育携带Tyr基因单核苷酸突变(G291T)的白化C57BL/6J小鼠。我们首先设计并构建了针对Tyr基因的CRISPR/Cas9表达载体(px330-Tyr-M)。通过EGxxFP系统证实了px330-Tyr-M在Tyr基因靶位点的DNA切割活性。我们还设计了用于同源定向修复(HDR)介导的基因修饰的ssDNA供体。将px330-Tyr-M载体和ssDNA供体共同显微注射到来自C57BL/6J小鼠的224个单细胞期胚胎的原核中。我们获得了60只新生小鼠,其中28只表现出眼部白化病且没有被毛色素沉着。对白化小鼠的基因组测序分析表明,Tyr基因中11只小鼠发生了单核苷酸突变的靶点G291T,并且有一只奠基者小鼠是纯合突变。其余没有Tyr G291T突变的白化奠基者小鼠在Tyr基因座的靶位点附近也具有双等位基因缺失和插入突变体。通过向C57BL/6J受精卵显微注射px330-Tyr-M DNA载体和突变的ssDNA(Tyr基因中的G291T)供体,实现了白化C57BL/6J小鼠的简单培育。CRISPR/Cas9载体与可选的突变ssDNA的组合有望有效地生产用于研究人类疾病的新型单核苷酸突变诱导的小鼠模型。

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